Finite temperature QCD with two flavors of nonperturbatively improved Wilson fermions

We study QCD with two flavors of non-perturbatively improved Wilson fermions at finite temperature on the $16^3 8$ lattice. We determine the transition temperature at lattice spacings as small as $a \sim 0.12$ fm, and study string breaking below the finite temperature transition. We find that the st...

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Hauptverfasser: Bornyakov, V. G., Chernodub, M. N., Ichie, H., Koma, Y., Mori, Y., Nakamura, Y., Polikarpov, M. I., Schierholz, G., Slavnov, A. A., Stuben, H., Suzuki, T., Uvarov, P. V., Veselov, A. I.
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container_start_page 114504 (2005). doi:10.1103/PhysRevD.71.114504
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creator Bornyakov, V. G.
Chernodub, M. N.
Ichie, H.
Koma, Y.
Mori, Y.
Nakamura, Y.
Polikarpov, M. I.
Schierholz, G.
Slavnov, A. A.
Stuben, H.
Suzuki, T.
Uvarov, P. V.
Veselov, A. I.
description We study QCD with two flavors of non-perturbatively improved Wilson fermions at finite temperature on the $16^3 8$ lattice. We determine the transition temperature at lattice spacings as small as $a \sim 0.12$ fm, and study string breaking below the finite temperature transition. We find that the static potential can be fitted by a two-state ansatz, including a string state and a two-meson state. We investigate the role of Abelian monopoles at finite temperature.
doi_str_mv 10.3204/pubdb-2017-06391
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issn 1550-7998
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1550-2368
language eng
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subjects fermion: lattice field theory
finite temperature
flavor: 2
flux tube
gauge field theory: SU
monopole: abelian
monopole: density
numerical calculations: Monte Carlo
Polyakov loop
potential: static
string: decay
title Finite temperature QCD with two flavors of nonperturbatively improved Wilson fermions
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